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Enchaining EDTA-chelated lanthanide molecular magnets into ordered 1D networks

机译:将EDTA螯合的镧系元素分子磁铁迷向有序的1D网络

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Extending molecular systems into chain networks is a unique method with which to orient magnetic molecules into well-ordered arrays along one dimension, and study their resulting properties. Complexes of the formula Na[Ln(EDTA)(H _(2) O) _(3) ] _( n ) ·5H _(2) O are presented, where Ln = Y ~(III) ( 1 ), Eu ~(III) ( 2 ), Tb ~(III) ( 3 ), Dy ~(III) ( 4 ). EDTA chain-like architectures were obtained in water by adding Na ~(+) as a bridging ion. Structures were characterized using single crystal X-ray diffraction, and X-ray powder diffraction. Infrared spectroscopy and elemental analysis were performed on all samples in order to confirm bulk purity of the products. Direct current and alternating current magnetic susceptibility measurements were carried out on all paramagnetic complexes in order to investigate any potential magnetic interactions between ions, as well as potential dynamic magnetic properties. Tb ~(III) ( 3 ) and Dy ~(III) ( 4 ) compounds were confirmed to exhibit slow relaxation of the magnetization under an optimized applied dc field. Energy barriers to magnetic relaxation and pre-exponential factors differed dramatically between the lanthanide analogues, thus, magnetostructural correlations were performed using shape analysis techniques, which explained the presence of multiple relaxation processes. Furthermore, the trajectory of the anisotropy axes of the Dy ~(III) ions in 4 was modelled and compared with our previously studied Gd ~(III) system.
机译:将分子系统扩展到链网络中是一种独特的方法,其中将磁性分子定向到沿一个尺寸的井数阵列中,并研究其所得性质。呈现出式Na [LN(EDTA)(H _(2)o)_(3)] _(n)·5h _(2)o的配合物,其中Ln = y〜(iii)(1),欧盟〜(iii)(2),Tb〜(iii)(3),Dy〜(iii)(4)。通过将Na〜(+)作为桥接离子添加Na〜(+),在水中获得EDTA链式架构。使用单晶X射线衍射和X射线粉末衍射表征结构。对所有样品进行红外光谱和元素分析,以确认产品的批量纯度。在所有顺磁复合物上进行直流和交流磁化率测量,以研究离子之间的任何潜在的磁性相互作用,以及潜在的动态磁性。确认Tb〜(III)(3)和Dy〜(4)化合物在优化的施加的DC场下表现出磁化的缓慢松弛。磁性弛豫和预指数因子的能量屏障在镧系里类似物之间急剧不同,因此使用形状分析技术进行磁性结构相关性,这解释了多个松弛过程的存在。此外,与我们先前研究的GD〜(III)系统进行了建模并将Dy〜(III)离子的各向异性轴的轨迹进行了建模。

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